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首页> 外文期刊>PLoS Biology >Notch dimerization and gene dosage are important for normal heart development, intestinal stem cell maintenance, and splenic marginal zone B-cell homeostasis during mite infestation
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Notch dimerization and gene dosage are important for normal heart development, intestinal stem cell maintenance, and splenic marginal zone B-cell homeostasis during mite infestation

机译:Notch二聚化和基因剂量对于正常心脏发育,肠道干细胞维持和脾脏边缘区B细胞稳态是重要的螨虫侵扰

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Cooperative DNA binding is a key feature of transcriptional regulation. Here we examined the role of cooperativity in Notch signaling by CRISPR-mediated engineering of mice in which neither Notch1 nor Notch2 can homo- or heterodimerize, essential for cooperative binding to sequence-paired sites (SPS) located near many Notch-regulated genes. Although most known Notch-dependent phenotypes were unaffected in Notch1/2 dimer–deficient mice, a subset of tissues proved highly sensitive to loss of cooperativity. These phenotypes include heart development, compromised viability in combination with low gene dose, and the gut, developing ulcerative colitis in response to 1% dextran sulfate sodium (DSS). The most striking phenotypes—gender imbalance and splenic marginal zone B-cell lymphoma—emerged in combination with gene dose reduction or when challenged by chronic fur mite infestation. This study highlights the role of the environment in malignancy and colitis and is consistent with Notch-dependent anti-parasite immune responses being compromised in Notch dimer–deficient animals.
机译:合作DNA结合是转录调节的关键特征。在这里,我们研究了合作中的作用在陷阱信号传导中,介导的小鼠的介导的小鼠工程,其中既不是何种术语,也不能使位于许多Notch调节基因附近的序列配对位点(SPS)的合作结合必不可少。尽管在Notch1 / 2二聚体缺陷小鼠中,最着名的抑制表型不受影响,但证明了对合作损失的损失非常敏感。这些表型包括心脏发育,与低基因剂量和肠道组合的可生存能力,以及响应于1%葡聚糖硫酸钠(DSS)而发育溃疡性结肠炎。最引人注目的表型 - 性别不平衡和脾脏边缘区B细胞淋巴瘤 - 结合基因剂量减少或受到慢性毛螨灭绝的攻击。本研究突出了环境在恶性肿瘤和结肠炎中的作用,并且与在缺口二聚体缺陷的动物中受损的缺口依赖性抗寄生虫免疫应答一致。

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